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首页> 外文期刊>BMC Genomics >Generation and analysis of large-scale expressed sequence tags (ESTs) from a full-length enriched cDNA library of porcine backfat tissue
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Generation and analysis of large-scale expressed sequence tags (ESTs) from a full-length enriched cDNA library of porcine backfat tissue

机译:猪后脂肪组织全长cDNA文库中大规模表达序列标签(EST)的产生和分析

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Background Genome research in farm animals will expand our basic knowledge of the genetic control of complex traits, and the results will be applied in the livestock industry to improve meat quality and productivity, as well as to reduce the incidence of disease. A combination of quantitative trait locus mapping and microarray analysis is a useful approach to reduce the overall effort needed to identify genes associated with quantitative traits of interest. Results We constructed a full-length enriched cDNA library from porcine backfat tissue. The estimated average size of the cDNA inserts was 1.7 kb, and the cDNA fullness ratio was 70%. In total, we deposited 16,110 high-quality sequences in the dbEST division of GenBank (accession numbers: DT319652 - DT335761 ). For all the expressed sequence tags (ESTs), approximately 10.9 Mb of porcine sequence were generated with an average length of 674 bp per EST (range: 200–952 bp). Clustering and assembly of these ESTs resulted in a total of 5,008 unique sequences with 1,776 contigs (35.46%) and 3,232 singleton (65.54%) ESTs. From a total of 5,008 unique sequences, 3,154 (62.98%) were similar to other sequences, and 1,854 (37.02%) were identified as having no hit or low identity (Sus scrofa. Gene ontology (GO) annotation of unique sequences showed that approximately 31.7, 32.3, and 30.8% were assigned molecular function, biological process, and cellular component GO terms, respectively. A total of 1,854 putative novel transcripts resulted after comparison and filtering with the TIGR SsGI; these included a large percentage of singletons (80.64%) and a small proportion of contigs (13.36%). Conclusion The sequence data generated in this study will provide valuable information for studying expression profiles using EST-based microarrays and assist in the condensation of current pig TCs into clusters representing longer stretches of cDNA sequences. The isolation of genes expressed in backfat tissue is the first step toward a better understanding of backfat tissue on a genomic basis.
机译:背景技术对农场动物的基因组研究将扩展我们对复杂性状遗传控制的基础知识,并将其结果应用于畜牧业,以提高肉的质量和生产率,并减少疾病的发生。定量性状基因座作图和微阵列分析相结合是一种有用的方法,可减少识别与感兴趣的定量性状相关的基因所需的总体工作量。结果我们从猪后脂肪组织中构建了一个全长富集的cDNA文库。 cDNA插入片段的估计平均大小为1.7 kb,cDNA充满度为70%。我们总共在GenBank的dbEST部门存放了16,110个高质量序列(登录号:DT319652-DT335761)。对于所有表达的序列标签(EST),大约产生了10.9 Mb的猪序列,每个EST的平均长度为674 bp(范围:200–952 bp)。这些EST的聚类和组装产生了总计5,008个独特序列,其中包含1,776个重叠群(35.46%)和3,232个单例(65.54%)EST。在总共5,008个独特序列中,有3,154个(62.98%)与其他序列相似,并且有1,854个(37.02%)被鉴定为没有命中或同一性较低(Sus scrofa。基因本体论(GO)注释,唯一序列表明,大约分别为31.7、32.3和30.8%分配了分子功能,生物学过程和细胞组分GO术语,经TIGR SsGI比较和过滤后,总共获得了1,854个推定的新转录本;其中包括很大比例的单例(80.64%结论本研究产生的序列数据将为使用基于EST的微阵列研究表达谱提供有价值的信息,并有助于将当前的猪TC浓缩成代表更长序列cDNA序列的簇在脂肪组织中表达的基因的分离是在基因组基础上更好地了解脂肪组织的第一步。

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